Developing an energy rating for bifacial photovoltaic modules

Author:

Vogt Malte Ruben1ORCID,Pilis Giorgos1,Zeman Miro1,Santbergen Rudi1,Isabella Olindo1

Affiliation:

1. Delft University of Technology PVMD, Mekelweg 4 Delft 2628CD The Netherlands

Abstract

AbstractThe photovoltaic (PV) module energy rating standard series IEC 61853 does not cover bifacial PV modules. However, the market share of bifacial PV modules has dramatically increased in recent years and is projected to grow. This work demonstrates how Parts 3 and 4 of the IEC 61853 standard could be extended to bifacial modules. First, we develop an irradiance model that uses the data already given in the standard IEC 61853‐4 to calculate the irradiance on the rear side of the module. Second, we propose a way to extend the energy yield calculation algorithm IEC 61853‐3 to include bifacial modules and make it available to the PV community. This rear irradiance and bifacial energy yield calculation procedure is tested using real outdoor measurements for a nine‐month period with a root mean square difference between measured and simulated energy yield of 4.65%. To conclude, we investigate the impact of different climates and normalization on the bifacial module energy rating results.

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference48 articles.

1. “IEC61836: solar photovoltaic energy systems—terms definitions and symbols.”2016.

2. “IEC 60904‐3: photovoltaic devices—part 3: measurement principles for terrestrial photovoltaic (PV) solar devices with reference spectral irradiance data.”2019.

3. Bonilla CastroJ SchweigerM MoserDet al. “Climatic rating of photovoltaic modules: different technologies for various operating conditions ” IEA‐PVPS T13‐20:2020 2021.

4. Photovoltaic energy rating data sets for Europe

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